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Field-scale water balance closure in seasonally frozen conditions

机译:季节性冻结条件下的现场规模水平闭合

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Hydrological water balance closure is a simple concept, yet in practice it is uncommon to measure every significant term independently in the field. Here we demonstrate the degree to which the field-scale water balance can be closed using only routine field observations in a seasonally frozen prairie pasture field site in Saskatchewan, Canada. Arrays of snow and soil moisture measurements were combined with a precipitation gauge and flux tower evapotran-spiration estimates. We consider three hydrologically distinct periods: the snow accumulation period over the winter, the snowmelt period in spring, and the summer growing season. In each period, we attempt to quantify the residual between net precipitation (precipitation minus evaporation) and the change in field-scale storage (snow and soil moisture), while accounting for measurement uncertainties. When the residual is negligible, a simple 1-D water balance with no net drainage is adequate. When the residual is non-negligible, we must find additional processes to explain the result. We identify the hydrological fluxes which confound the 1-D water balance assumptions during different periods of the year, notably blowing snow and frozen soil moisture redistribution during the snow accumulation period, and snowmelt runoff and soil drainage during the melt period. Challenges associated with quantifying these processes, as well as uncertainties in the measurable quantities, caution against the common use of water balance residuals to estimate fluxes and constrain models in such a complex environment.
机译:水文水平衡闭合是一个简单的概念,但在实践中,独立测量现场的每个重要项并不常见。在这里,我们展示了在加拿大萨斯喀彻温省季节性冰冻草原牧场现场,仅使用常规现场观察就可以关闭现场规模的水平衡的程度。雪和土壤湿度测量阵列与降水量计和通量塔evapotran呼吸估计相结合。我们考虑了三个水文上不同的时期:冬季积雪期、春季融雪期和夏季生长季。在每个时期,我们都试图量化净降水量(降水量减去蒸发量)和田间蓄水量变化(雪和土壤湿度)之间的剩余量,同时考虑测量不确定性。当残余水量可以忽略不计时,简单的一维水平衡就足够了,没有净排水。当残差不可忽略时,我们必须找到其他过程来解释结果。我们确定了在一年中不同时期扰乱一维水平衡假设的水文通量,尤其是积雪累积期的吹雪和冻土水分再分配,以及融化期的融雪径流和土壤排水。与量化这些过程相关的挑战,以及可测量量中的不确定性,提醒人们不要在如此复杂的环境中普遍使用水平衡残差来估计通量和约束模型。

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